Study Hardy Weinberg Equilibrium in AP Biology with focused flashcards that help you recognize the idea, recall the key rule, and apply it in practice-style prompts.
AP Biology
Hardy Weinberg Equilibrium
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QUESTION
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What does the variable p represent in the Hardy-Weinberg principle?
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ANSWER
Frequency of the dominant allele. p is the proportion of dominant alleles in the gene pool.
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This deck focuses on Hardy Weinberg Equilibrium, giving you a quick way to review the definitions, rules, and examples that matter most for AP Biology.
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Flashcard 1: What does the variable p represent in the Hardy-Weinberg principle?
Answer: Frequency of the dominant allele. p is the proportion of dominant alleles in the gene pool.
Flashcard 2: What does the Hardy-Weinberg law predict about allele frequencies?
Answer: They remain constant over generations. Frequencies stay stable when all equilibrium conditions are met.
Flashcard 3: What does it mean if a population is not in Hardy-Weinberg equilibrium?
Answer: Evolution is occurring. Deviations indicate one or more evolutionary forces are acting.
Flashcard 4: What is the significance of the Hardy-Weinberg principle in biology?
Answer: It provides a model for genetic variation in populations. Serves as a null hypothesis to detect evolutionary change.
Flashcard 5: What is the sum of genotype frequencies in Hardy-Weinberg equilibrium?
Answer:
All possible genotypes must account for 100% of the population.
Flashcard 6: What is the significance of the Hardy-Weinberg principle in biology?
Answer: It provides a model for genetic variation in populations. Serves as a null hypothesis to detect evolutionary change.
Flashcard 7: What does it mean if a population is not in Hardy-Weinberg equilibrium?
Answer: Evolution is occurring. Deviations indicate one or more evolutionary forces are acting.
Flashcard 8: What is the Hardy-Weinberg equation for genotype frequencies?
Answer: p2+2pq+q2=1. Represents all possible genotype combinations from (p+q)2 expansion.
Flashcard 9: List another condition necessary for Hardy-Weinberg equilibrium.
Answer: No mutation. New alleles cannot be created or existing ones changed.
Flashcard 10: What is the Hardy-Weinberg equation for genotype frequencies?
Answer: p2+2pq+q2=1. Represents all possible genotype combinations from (p+q)2 expansion.
Flashcard 11: What is the sum of allele frequencies in Hardy-Weinberg equilibrium?
Answer:
All possible alleles must account for 100% of the gene pool.
Flashcard 12: Calculate p2 if p=0.7.
Answer: p2=0.49. Square the allele frequency: (0.7)2=0.49.
Flashcard 13: If p=0.8, what is q and what does it represent?
Answer: q=0.2, frequency of the recessive allele. Since p+q=1, q=0.2 and represents recessive allele frequency.
Flashcard 14: What happens to genotype frequencies under Hardy-Weinberg equilibrium?
Answer: They remain constant over generations. Genotype proportions remain unchanged across generations.
Flashcard 15: What is another condition for Hardy-Weinberg equilibrium?
Answer: No gene flow (migration). No individuals can enter or leave the population.
Flashcard 16: If p=0.6, what is q in a Hardy-Weinberg population?
Answer: q=0.4. Since p+q=1, then q=1−0.6=0.4.
Flashcard 17: List another condition necessary for Hardy-Weinberg equilibrium.
Answer: No mutation. New alleles cannot be created or existing ones changed.
Flashcard 18: If q=0.4, what is the frequency of the homozygous recessive genotype?
Answer: q2=0.16. Square the allele frequency: (0.4)2=0.16.
Flashcard 19: What does the Hardy-Weinberg law predict about allele frequencies?
Answer: They remain constant over generations. Frequencies stay stable when all equilibrium conditions are met.
Flashcard 20: What is the sum of allele frequencies in Hardy-Weinberg equilibrium?
Answer:
All possible alleles must account for 100% of the gene pool.
Flashcard 21: What is the frequency of the recessive phenotype if q2=0.04?
Answer: 0.04. The recessive phenotype frequency equals q2.
Flashcard 22: Identify the term for q2 in the Hardy-Weinberg equation.
Answer: Frequency of homozygous recessive genotype. q2 represents individuals with two copies of the recessive allele.
Flashcard 23: What is the main assumption of the Hardy-Weinberg equilibrium model?
Answer: No evolution occurs in the population. Equilibrium assumes no evolutionary forces change allele frequencies.
Flashcard 24: Determine q if the frequency of aa is 0.25.
Answer: q=0.5. Since q2=0.25, then q=0.25=0.5.
Flashcard 25: Identify the term for p2 in the Hardy-Weinberg equation.
Answer: Frequency of homozygous dominant genotype. p2 represents individuals with two copies of the dominant allele.
Flashcard 26: In Hardy-Weinberg, what is the expected frequency of the Aa genotype?
Answer: 2pq. The frequency of heterozygous individuals.
Flashcard 27: If q=0.4, what is the frequency of the homozygous recessive genotype?
Answer: q2=0.16. Square the allele frequency: (0.4)2=0.16.
Flashcard 28: Determine the frequency of AA if p=0.6.
Answer: p2=0.36. Square the allele frequency: (0.6)2=0.36.
Flashcard 29: What happens to genotype frequencies under Hardy-Weinberg equilibrium?
Answer: They remain constant over generations. Genotype proportions remain unchanged across generations.
Flashcard 30: Provide another condition for Hardy-Weinberg equilibrium.
Answer: No natural selection. All genotypes must have equal survival and reproductive success.
Flashcard 31: Find q2 if the recessive allele frequency is 0.2.
Answer: q2=0.04. Square the allele frequency: (0.2)2=0.04.
Flashcard 32: Determine the frequency of AA if p=0.6.
Answer: p2=0.36. Square the allele frequency: (0.6)2=0.36.
Flashcard 33: Find the frequency of the dominant phenotype if p=0.8 and q=0.2.